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- W2073261298 abstract "Abstract We have investigated excess electron filling spectra in a new type of artificial spherical clad quantum dots, i.e., the shell quantum dots (SQD), using the unrestricted Hartree–Fock–Roothaan method. The emphasis is on the shell thickness influence on the excess electron filling law, the ground state electronic spin orbital configuration, and the chemical potentials of the N-electron SQD. It has been found that the electron filling manner and the spin configuration change with the shell thickness of the SQD, which is very different from the normal core quantum dot. With the increase of the core radius of SQD, the central confinement potential barrier makes the spatial arrangement of filling electrons change, leading to the vanishment of the s-energy level and the appearance of p-energy level and forming three distinct filling regimes of excess electrons. The results also show that the electron pair fillings can appear in the 1d-shell for this new-style QD." @default.
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- W2073261298 date "2003-09-01" @default.
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- W2073261298 title "Excess electron filling spectra in artificial spherical shell quantum dots" @default.
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- W2073261298 doi "https://doi.org/10.1016/s0375-9601(03)01110-1" @default.
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